外消旋化
氨基酸
二肽
肽
化学
肽合成
延伸率
差向异构体
试剂
组合化学
有机化学
生物化学
材料科学
冶金
极限抗拉强度
作者
Shinichiro Fuse,Koshiro Masuda,Yuma Otake,Hiroyuki Nakamura
标识
DOI:10.1002/chem.201903531
摘要
Abstract Conventional peptide synthesis requires a deprotection step after each amidation step, which decreases synthetic efficiency. Therefore, peptide synthesis using unprotected amino acids is considered an ideal approach. Here, we report peptide chain elongation using unprotected amino acids via a mixed carbonic anhydride. Micro‐flow technology enabled rapid mixing of an organic layer containing a protected amino acid or dipeptide and an aqueous layer containing an unprotected amino acid or dipeptide to accelerate the desired amidation, and this approach successfully suppressed undesired racemization/epimerization (≤0.4 %). Various di‐, tri‐, and tetra‐peptides were obtained in good to high yields. This is the first report on peptide chain elongation that proceeds without severe racemization from unprotected amino acids using inexpensive, nonexplosive, less wasteful, and less toxic reagents.
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